85 GHz te1,3 phase-locked gyroklystron oscillator experiment

J. Burke, M. Czarnaski, R. Fischer, A. Ganguly, A. Fliflet, W. Manheimer, L. Barnett
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Abstract

Phase-locked gyroklystron oscillators offer many advantages over conventional gyrotrons including better mode control resulting in higher efficiency operation, narrow band frequency tunability and the possibility of coherently combining many sources for ultra-high power applications. We are studying phase-locking of highly overmoded gyrotrons at moderate power levels (∼100 kw) in an 85 GHz two cavity TE1,3 gyroklystron oscillator configuration as shown in Figure 1. The key issues to be addressed by the experiment are:
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85 GHz te1,3锁相回旋速调管振荡器实验
锁相回旋速调管振荡器与传统回旋管相比具有许多优点,包括更好的模式控制,从而提高操作效率,窄带频率可调性以及为超高功率应用相干组合许多源的可能性。我们正在研究在85 GHz双腔te1,3回旋速调管振荡器配置中,中等功率电平(~ 100 kw)下高度过模回旋管的锁相,如图1所示。本实验要解决的关键问题是:
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A 3mm heterodyne imaging array Final design and initial operation of a high peak power x-band gyroklystron High-temperature millimeter-wave dielectric measurements by free-space techniques Modulation of an intense beam by an external microwave source in the non-linear regime — theory and simulation 85 GHz te1,3 phase-locked gyroklystron oscillator experiment
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